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压电陶瓷(PZT)振动器的开路测试及其应用

Open-circuit test of a PZT vibrator and its applications.

作者信息

Chang Kuo-Tsi, Ouyang Minsun

机构信息

Department of Engineering and System Science, National Tsing-Hua University, 101, Section 2 Kuang Fu Road, Hsinchu 30043, Taiwan, ROC.

出版信息

Ultrasonics. 2003 Jan;41(1):15-23. doi: 10.1016/s0041-624x(02)00394-3.

Abstract

This study investigates a terminal transient response of a Langevin-type PZT vibrator theoretically and experimentally to quantify an electrical shock and refine an equivalent circuit of the vibrator. The shock is induced immediately after an AC sinusoidal voltage of the vibrator is switched off. Then, the transient response involves a DC part and an AC part, which approach zero at the DC and AC times, respectively, and the vibrator is placed on a sponge in air. To do so, we should propose an open-circuit test to find the AC and DC times in addition to the maximum amplitude of the transient response. Thus the DC times exceeds the AC time, and the AC and DC times are used to estimate the resistances in the equivalent circuit presenting the real mechanical and dielectric losses, respectively. Therefore, the resistances in the equivalent circuit are sensitive to the vibration amplitude, but the inductance and capacitances are not. Furthermore, the maximum amplitude is required to cause the shock, and depends on the frequency of the source and the open-circuited time, and is about 65 times the amplitude of the source.

摘要

本研究从理论和实验两方面研究了兰格文型压电陶瓷(PZT)振动器的终端瞬态响应,以量化电冲击并优化振动器的等效电路。该冲击在振动器的交流正弦电压关闭后立即产生。然后,瞬态响应包括一个直流部分和一个交流部分,它们分别在直流和交流时刻趋近于零,并且振动器放置在空气中的海绵上。为此,除了瞬态响应的最大幅度外,我们还应提出一个开路测试来确定交流和直流时刻。因此,直流时刻超过交流时刻,并且交流和直流时刻分别用于估计等效电路中代表实际机械损耗和介电损耗的电阻。因此,等效电路中的电阻对振动幅度敏感,但电感和电容则不然。此外,需要最大幅度来产生冲击,并且它取决于源的频率和开路时间,约为源幅度的65倍。

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